Wang Gongnan, Ding Xinhua, Yuan Meng, Qiu Deyun, Li Xianghua, Xu Caiguo, Wang Shiping
National Key Laboratory of Crop Genetic Improvement, National Center of Plant Gene Research (Wuhan), Huazhong Agricultural University, Wuhan, 430070, China.
Plant Mol Biol. 2006 Feb;60(3):437-49. doi: 10.1007/s11103-005-4770-x.
The function of OsDR8, a rice disease resistance-responsive gene, was studied. Silencing of OsDR8 using an RNA interference approach resulted in phenotypic alteration of the plants. The transgenic plants with repressed expression of OsDR8 showed reduced resistance or susceptibility to Xanthomonas oryzae pv. oryzae and Magnaporthe grisea causing bacterial blight and blast, which are two of the most devastating diseases in rice worldwide, respectively. The putative product of OsDR8 was highly homologous to an enzyme involved in the biosynthesis of the thiazole precursor of thiamine. Transgenic plants showing repressed expression of OsDR8 and reduced resistance had significantly lower levels of thiamine than the control plants. Exogenous application of thiamine could complement the compromised defense of the OsDR8-silenced plants. The expression level of several defense-responsive genes including the earlier functional genes of defense transduction pathway, OsPOX and OsPAL, and the downstream genes of the pathway, OsPR1a, OsPR1b, OsPR4, OsPR5 and OsPR10, was also decreased in the OsDR8-silenced plants. These results suggest that the impact of OsDR8 on disease resistance in rice may be through the regulation of expression of other defense-responsive genes and the site of OsDR8 function is on the upstream of the signal transduction pathway. In addition, the accumulation of thiamine may be essential for bacterial blight resistance and blast resistance.
对水稻抗病反应基因OsDR8的功能进行了研究。采用RNA干扰方法沉默OsDR8导致植株表型改变。OsDR8表达受抑制的转基因植株对引起白叶枯病和稻瘟病的水稻白叶枯病菌和稻瘟病菌的抗性降低或更易感病,这两种病分别是全球水稻中最具毁灭性的病害。OsDR8的推定产物与一种参与硫胺素噻唑前体生物合成的酶高度同源。OsDR8表达受抑制且抗性降低的转基因植株中硫胺素水平显著低于对照植株。外源施用硫胺素可弥补OsDR8沉默植株受损的防御能力。在OsDR8沉默的植株中,包括防御转导途径早期功能基因OsPOX和OsPAL以及该途径下游基因OsPR1a、OsPR1b、OsPR4、OsPR5和OsPR10在内的几个防御反应基因的表达水平也降低了。这些结果表明,OsDR8对水稻抗病性的影响可能是通过调节其他防御反应基因的表达,且OsDR8的功能位点在信号转导途径的上游。此外,硫胺素的积累可能对白叶枯病抗性和稻瘟病抗性至关重要。